Novel myristoylation of the sperm-specific hexokinase 1 isoform regulates its atypical localization
The hexokinase 1 variant in mammalian spermatozoa (HK1S) has a unique N-terminus and this isoform atypically localizes to the plasma membrane. However, the mechanism of this process currently remains ambiguous. In this report, we show that fatty acylation underlies the specific sorting of HK1S. Empl...
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The Company of Biologists
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doaj-f6cd1b6f51614b83a1eeafb0a9a28e662021-06-02T13:29:35ZengThe Company of BiologistsBiology Open2046-63902015-12-014121679168710.1242/bio.012831012831Novel myristoylation of the sperm-specific hexokinase 1 isoform regulates its atypical localizationSujeet Kumar0Sreejit Parameswaran1Rajendra K. Sharma2 Department of Pathology and Laboratory Medicine, Cancer Cluster, College of Medicine, University of Saskatchewan, 107 Wiggins Road, Saskatoon, Saskatchewan S7N 5E5, Canada Department of Pathology and Laboratory Medicine, Cancer Cluster, College of Medicine, University of Saskatchewan, 107 Wiggins Road, Saskatoon, Saskatchewan S7N 5E5, Canada Department of Pathology and Laboratory Medicine, Cancer Cluster, College of Medicine, University of Saskatchewan, 107 Wiggins Road, Saskatoon, Saskatchewan S7N 5E5, Canada The hexokinase 1 variant in mammalian spermatozoa (HK1S) has a unique N-terminus and this isoform atypically localizes to the plasma membrane. However, the mechanism of this process currently remains ambiguous. In this report, we show that fatty acylation underlies the specific sorting of HK1S. Employing chimeric reporter constructs, we first established that compartmentalization of HK1S does not function exclusively in sperm cells and that this feature is swappable to somatic HEK293 cells. Although the N-terminus lacks the classical consensus signature for myristoylation and the sequence-based predictions fail to predict myristoylation of HK1S, complementary experimental approaches confirmed that HK1S is myristoylated. Using live-cell confocal microscopy, we show that the mutation of a single amino acid, the myristoyl recipient Gly2, impedes the prominent feature of plasma membrane association and relocates the enzyme to the cytosol but not the nucleus. Additionally, substitutions of the putatively palmitoylated Cys5 is also reflected in a similar loss of compartmentalization of the protein. Taken together, our findings conclusively demonstrate that the N-terminal ‘MGQICQ’ motif in the unique GCS domain of HK1S acquires hydrophobicity by dual lipidic modifications, N-myristoylation and palmitoylation, to serve the requirements for membranous associations and thus its compartmentalization.http://bio.biologists.org/content/4/12/1679HexokinaseMyristoylationProtein acylationAtypical localizationAlternative splicing |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Sujeet Kumar Sreejit Parameswaran Rajendra K. Sharma |
spellingShingle |
Sujeet Kumar Sreejit Parameswaran Rajendra K. Sharma Novel myristoylation of the sperm-specific hexokinase 1 isoform regulates its atypical localization Biology Open Hexokinase Myristoylation Protein acylation Atypical localization Alternative splicing |
author_facet |
Sujeet Kumar Sreejit Parameswaran Rajendra K. Sharma |
author_sort |
Sujeet Kumar |
title |
Novel myristoylation of the sperm-specific hexokinase 1 isoform regulates its atypical localization |
title_short |
Novel myristoylation of the sperm-specific hexokinase 1 isoform regulates its atypical localization |
title_full |
Novel myristoylation of the sperm-specific hexokinase 1 isoform regulates its atypical localization |
title_fullStr |
Novel myristoylation of the sperm-specific hexokinase 1 isoform regulates its atypical localization |
title_full_unstemmed |
Novel myristoylation of the sperm-specific hexokinase 1 isoform regulates its atypical localization |
title_sort |
novel myristoylation of the sperm-specific hexokinase 1 isoform regulates its atypical localization |
publisher |
The Company of Biologists |
series |
Biology Open |
issn |
2046-6390 |
publishDate |
2015-12-01 |
description |
The hexokinase 1 variant in mammalian spermatozoa (HK1S) has a unique N-terminus and this isoform atypically localizes to the plasma membrane. However, the mechanism of this process currently remains ambiguous. In this report, we show that fatty acylation underlies the specific sorting of HK1S. Employing chimeric reporter constructs, we first established that compartmentalization of HK1S does not function exclusively in sperm cells and that this feature is swappable to somatic HEK293 cells. Although the N-terminus lacks the classical consensus signature for myristoylation and the sequence-based predictions fail to predict myristoylation of HK1S, complementary experimental approaches confirmed that HK1S is myristoylated. Using live-cell confocal microscopy, we show that the mutation of a single amino acid, the myristoyl recipient Gly2, impedes the prominent feature of plasma membrane association and relocates the enzyme to the cytosol but not the nucleus. Additionally, substitutions of the putatively palmitoylated Cys5 is also reflected in a similar loss of compartmentalization of the protein. Taken together, our findings conclusively demonstrate that the N-terminal ‘MGQICQ’ motif in the unique GCS domain of HK1S acquires hydrophobicity by dual lipidic modifications, N-myristoylation and palmitoylation, to serve the requirements for membranous associations and thus its compartmentalization. |
topic |
Hexokinase Myristoylation Protein acylation Atypical localization Alternative splicing |
url |
http://bio.biologists.org/content/4/12/1679 |
work_keys_str_mv |
AT sujeetkumar novelmyristoylationofthespermspecifichexokinase1isoformregulatesitsatypicallocalization AT sreejitparameswaran novelmyristoylationofthespermspecifichexokinase1isoformregulatesitsatypicallocalization AT rajendraksharma novelmyristoylationofthespermspecifichexokinase1isoformregulatesitsatypicallocalization |
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1721404026935836672 |